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Analysis of sulfur-iodine thermochemical cycle for solar hydrogen production. Part Ⅰ: decomposition of sulfuric acid

机译:用于太阳能制氢的硫碘热化学循环分析。第一部分:硫酸的分解

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The sulfur-iodine (S-I) thermochemical water splitting cycle is one of the most studied cycles for hydrogen (H_2) production. S-I cycle consists of four sections: (Ⅰ) acid production and separation and oxygen purification, (Ⅱ) sulfuric acid concentration and decomposition, (Ⅲ) hydroiodic acid (HI) concentration, and (Ⅳ) HI decomposition and H_2 purification. Section Ⅱ of the cycle is an endothermic reaction driven by the heat input from a high temperature source. Analysis of the S-I cycle in the past thirty years have been focused mostly on the utilization of nuclear power as the high temperature heat source for the sulfuric acid decomposition step. Thermodynamic as well as kinetic considerations indicate that both the extent and rate of sulfuric acid decomposition can be improved at very high temperatures (in excess of 1000℃) available only from solar concentrators. The beneficial effect of high temperature solar heat for decomposition of sulfuric acid in the S-I cycle is described in this paper. We used Aspen Technologies' HYSYS chemical process simulator (CPS) to develop flowsheets for sulfuric acid (H_2SO_4) decomposition that include all mass and heat balances. Based on the HYSYS analyses, two new process flowsheets were developed. These new sulfuric acid decomposition processes are simpler and more stable than previous processes and yield higher conversion efficiencies for the sulfuric acid decomposition and sulfur dioxide and oxygen formation.
机译:硫碘(S-1)热化学水分解循环是氢(H_2)生产研究最多的循环之一。 S-I循环包括四个部分:(Ⅰ)酸的产生和分离以及氧的纯化,(Ⅱ)硫酸的浓度和分解,(Ⅲ)氢碘酸(HI)的浓度,以及(Ⅳ)HI的分解和H_2的纯化。循环的第二部分是由高温源输入的热量驱动的吸热反应。在过去三十年中,对S-I循环的分析主要集中在利用核能作为硫酸分解步骤的高温热源。热力学和动力学方面的考虑表明,仅在太阳能聚光器才能提供的非常高的温度(超过1000℃)下,硫酸分解的程度和速率都可以提高。本文介绍了高温太阳热对S-1循环中硫酸分解的有益作用。我们使用Aspen Technologies的HYSYS化学过程模拟器(CPS)来开发硫酸(H_2SO_4)分解的流程图,其中包括所有质量和热量平衡。基于HYSYS分析,开发了两个新的工艺流程图。这些新的硫酸分解过程比以前的过程更简单,更稳定,并且为硫酸分解以及二氧化硫和氧气的形成带来更高的转化效率。

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